论文标题
减少热处理对MN:ZnO陶瓷的结构和磁性特性的影响
Effects of Reducing Heat Treatment on the Structural and the Magnetic Properties of Mn:ZnO Ceramics
论文作者
论文摘要
多晶体大量MN:Mn名义浓度为6、11、17和22 at。%的ZnO陶瓷是制备谷固态反应方法,并在还原大气(AR(95%)和H2(5%))中进行热处理。研究了样品,特别着重于它们的组成,结构和磁性。详细的微观结构和化学分析证实了Wurtzite ZnO结构的Mn掺杂,主要是在ZnO晶粒表面。对于具有较高MN含量的样品,分别检测到用于AS制备和热处理的样品的二期ZnMN2O4和MN1-XZNXO(Zn掺杂的MNO)。从ZnMN2O4到MN1-XZNXO的热处理下次级阶段的结构变化证实了热处理中热处理的有效性,以降低金属离子的价和形成氧空位中的氧气量。尽管存在诱导的缺陷,但磁分析仅呈现出磁磁性行为,并在MN离子之间具有抗磁磁耦合。在结合的磁极理论的背景下,得出结论,氧气空位不是在室温下促进所需的铁磁顺序的必要缺陷。
Polycrystalline bulk Mn:ZnO ceramics with Mn nominal concentrations of 6, 11, 17 and 22 at.% were prepared trough solid-state reaction method and subjected to a heat treatment in reducing atmosphere (Ar (95%) and H2 (5%)). The samples were studied with particular emphasis on their compositions, structural, and magnetic properties. A detailed microstructural and chemical analysis confirms the Mn doping of the wurtzite ZnO structure mainly at the surface of the ZnO grains. For the samples with higher Mn content, the secondary phases ZnMn2O4 and Mn1-xZnxO (Zn-doped MnO) were detected for the as prepared and the heat treated samples, respectively. The structural change of the secondary phases under heat treatment, from ZnMn2O4 to Mn1-xZnxO, confirms the effectiveness of the heat treatment in to reduce the valence of the metallic ions and in the formation of oxygen vacancies into the system. In spite of the induced defects, the magnetic analysis present only a paramagnetic behavior with an antiferromagnetic coupling between the Mn ions. In the context of the bound magnetic polaron theory, it is concluded that oxygen vacancies are not the necessary defect to promote the desired ferromagnetic order at room temperature.